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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Exploring the underwater silken architectures of caddisworms: comparative silkomics across two caddisfly suborders
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Exploring the underwater silken architectures of caddisworms: comparative silkomics across two caddisfly suborders

机译:探索Caddisworms的水下丝质架构:两个Caddisfly副船只的比较洁面质学

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摘要

Caddisfly (Trichoptera) larvae assemble a variety of underwater structures using bioadhesive silk. The order is divided into two primary sub-orders distinguished by how the larvae deploy their silk. Foraging Integripalpia larvae construct portable tube cases. Annulipalpia larvae construct stationary retreats, some with suspended nets to capture food. To identify silk molecular adaptations that may have contributed to caddisfly diversification, we report initial characterization of silk from a net-spinner genus, Parapsyche, for comparison with the silk of a tube case-maker genus, Hesperophylax. Overall, general features of silk structure and processing are conserved across the sub-orders despite approximately 200 Ma of divergence: the H-fibroin proteins comprise repeating phosphoserine-rich motifs, naturally spun silk fibres contain approximately 1 : 1 molar ratios of divalent metal ions to phosphate, silk fibre precursors are stored as complex fluids of at least two types of complexes, and silk gland proteins contain only traces of divalent metal ions, suggesting metal ions that solidify the fibres are absorbed from the aqueous environment after silk extrusion. However, the number and arrangement of the repeating phosphoserine blocks differ between genera, suggesting molecular adaptation of H-fibroin through duplication and shuffling of conserved structural modules may correspond with the radiation of caddisflies into diverse environments.
机译:Caddisfly(Trichoptera)幼虫使用生物粘性丝绸组装各种水下结构。该订单分为两个主要子订单,幼虫如何部署其丝绸。觅食百科亚幼虫构造便携式管箱。 Annulipalpia幼虫构建静止的撤退,一些悬浮网捕获食物。要识别可能已经到石蛾多元化做出了贡献丝的分子适应性,我们报告丝的初始特性从净微调属,Parapsyche,对于管的情况下,制造商属的丝绸,Hesperophylax比较。总体而言,丝结构和处理的一般特征跨过亚目尽管大约200毫安发散的保守:该H-丝心蛋白蛋白质包括重复富磷酸基序,天然绢丝纤维含有近似1:二价金属离子的1个摩尔比磷酸盐,丝绸纤维前体被存储为至少两种类型的复合物的复杂流体,和丝腺的蛋白质仅含有二价金属离子的痕迹,这表明从凝固丝挤出后的水环境中被吸收的纤维的金属离子。然而,数量和重复磷酸丝氨酸块的配置属之间不同,这表明通过重复H-丝心蛋白分子的适应和保守结构模块的混洗可以与caddisflies的辐射转换成不同的环境相对应。

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